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32 result(s) for "Spinturnicidae"
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Ecology of Bats, Their Ectoparasites, and Associated Pathogens on Saint Kitts Island
Ectoparasites of bats and bat-associated pathogens are poorly studied in the Lesser Antilles Islands. We report on an 11-mo field study on Saint Kitts Island of bat populations, their associated ectoparasites, and pathogens. We report on five ectoparasite species, including four Streblidae (Diptera) and a Spinturnicidae (Acari). Several genotypes of unnamed Bartonella were isolated from bats and ectoparasites. Microfilaria of an undetermined Litomosoides spp. were detected in blood from Artibeus jamaicensis Leach (Chiroptera: Phyllostomidae) (and associated ectoparasites: Trichobius intermedius Peterson and Hurka (Diptera: Streblidae) and Periglischrus iheringi Oudemans (Acari: Spinturnicidae)). In addition, an Ehrlichia sp. and Rickettsia africae were detected in the blood of several bat species. Our study is one of the first surveys of ectoparasite-borne pathogens in wild mammals from St. Kitts.
A New Species of the Genus Periglischrus (Acari: Spinturnicidae) on Leptonycteris nivalis (Chiroptera: Phyllostomidae) From Mexico, Including a Key to Species of the vargasi Species Group
Periglischrus calcariflexus new species, was found on the Greater Long-tongued bat Leptonycteris nivalis (Saussure) in Mexico. The female, male, deutonymphs, and protonymph are described and illustrated. Additionally, we evaluate the morphological variability of this species based on its geographical distribution. Considering this new species, the number of species in the vargasi species group within the genus Periglischrus increases to five; therefore, herein we include a key for the known species in the vargasi species group for the Neotropics. La nueva especie Periglischrus calcariflexus, fue hallada sobre la especie de murciélago mayor de lengua larga Leptonycteris nivalis (Saussure) en México. La hembra, macho, deutoninfas y protoninfa se describen e ilustran. Adicionalmente, evaluamos la variabiliadad morfológica de esta especie con base en su distribución geográfica. Considerando esta nueva especie, el número de especies en el grupo vargasi dentro del género Periglischrus incrementa a cinco; por lo cual aquí incluimos una clave para las especies conocidas del grupo vargasi para el Neotrópico.
Molecular detection of Bartonella spp. and Rickettsia spp. in bat ectoparasites in Brazil
The family Streblidae comprises a monophyletic group of Hippoboscoidea, hematophagous dipterans that parasitize bats. Bartonella spp. and Rickettsia spp. have been reported in bats sampled in Europe, Africa, Asia, North, Central and South America. However, there are few reports on the Bartonella and Rickettsia bacteria infecting Hippoboscoidea flies and mites. While Spinturnicidae mites are ectoparasites found only in bats, those belonging to the family Macronyssidae comprise mites that also parasitize other mammal species. This study investigates the occurrence and assesses the phylogenetic positioning of Bartonella spp. and Rickettsia spp. found in Streblidae flies and Spinturnicidae and Macronyssidae mites collected from bats captured in Brazil. From May 2011 to April 2012 and September 2013 to December 2014, 400 Streblidae flies, 100 Macronyssidaes, and 100 Spinturnicidae mites were collected from bats captured in two sites in northeastern Nova Iguaçu, Rio de Janeiro, southeastern Brazil. Forty (19.8%) out of 202 Streblidae flies were positive for Bartonella spp. in qPCR assays based on the nuoG gene. Among the flies positive for the bacterium, six (18%) were Paratrichobius longicrus, seven (29%) Strebla guajiro, two (40%) Aspidoptera phyllostomatis, five (11%) Aspidoptera falcata, one (10%) Trichobius anducei, one (25%) Megistopoda aranea, and 18 (32%) Trichobius joblingi, and collected from bats of the following species: Artibeus lituratus, Carollia perspicillata, Artibeus planirostris, Sturnira lilium, and Artibeus obscurus. Six sequences were obtained for Bartonella (nuoG [n = 2], gltA [n = 2], rpoB [n = 1], ribC = 1]). The phylogenetic analysis based on gltA (750pb) gene showed that the Bartonella sequences clustered with Bartonella genotypes detected in bats and ectoparasites previously sampled in Latin America, including Brazil. Only one sample (0.49%) of the species Trichobius joblingi collected from a specimen of Carollia perspicillata was positive for Rickettsia sp. in cPCR based on the gltA gene (401bp). This sequence was clustered with a 'Candidatus Rickettsia andaenae\" genotype detected in an Amblyomma parvum tick collected from a rodent in the southern region of Brazilian Pantanal. The sampled Macronyssidae and Spinturnicidae mites were negative for Bartonella spp. and Rickettsia spp. This study demonstrated the first occurrence of Bartonella spp. and Rickettsia spp. DNA in Streblidae flies collected from bats in Brazil.
Host–Parasite Association Dynamics Influence Dispersal and Population Genetics of Little Brown Myotis (Myotis lucifugus, Le Conte 1831) Ectoparasites
Host–parasite relationships can affect the dispersal and transmission of parasites. Myodopsylla insignis (Rothchild, 1903), a bat flea, and Spinturnix americanus (Banks, 1902), a bat wing mite, are two common ectoparasites of the little brown myotis (Myotis lucifugus, Le Conte 1831) that differ in life cycles and time spent on the host. Our goal was to compare how life history traits and host–parasite relationships influence the genetic structure and biogeography of co‐infecting ectoparasites using S. americanus mites and M. insignis fleas that feed on Myotis lucifugus bats. Ectoparasites were collected from bats captured at maternity roosts between 2010 and 2017 in Atlantic Canada and sequenced for the cytochrome oxidase c subunit 1 gene. We barcoded 223 S. americanus and 87 M. insignis specimens and examined their genetic diversity, genetic structure, and biogeography. We found evidence of a weak association between geographic distance and sequence divergence between Labrador and Nova Scotia for M. insignis and evidence of regional differentiation between the island of Newfoundland and the mainland for S. americanus, similar to previous findings for M. lucifugus. In terms of biogeography, M. insignis likely underwent historical population expansion, particularly in Labrador, whereas S. americanus may have undergone historical population expansion or selection. Our study highlights how host–parasite relationships are influenced at multiple scales by both host and parasite biology and how an understanding of both host and parasite informs predictions on how these dynamics will be affected by disturbances. Spinturnix americanus and Myodopsylla insignis are two common ectoparasites of little brown myotis (Myotis lucifugus) with different life history strategies. These ectoparasites exhibit corresponding differences in genetic diversity and dispersal with their hosts across Atlantic Canada.
Ectoparasite Diversity and Infection Burden on Two Sympatric Bat Species, Myotis lucifugus and M. septentrionalis (Chiroptera: Vespertilionidae)
Parasites are an abundant and diverse group of organisms that are often excluded from biodiversity surveys, limiting our understanding of host–parasite relationships and parasite diversity. Parasites are dependent on their hosts for survival and parasite populations are at risk if their host populations decline. The aim of our study was to quantify and compare the ectoparasite communities of two sympatric Atlantic Canadian bat species, Myotis lucifugus and M. septentrionalis. Ectoparasites were collected from bats captured for research throughout Atlantic Canada between 1999 and 2017 during the active season (May–October). The prevalence and mean intensity of infection were calculated for each identified ectoparasite species and generalized linear mixed models were used to assess host differences in infection by the two most abundant ectoparasites. Both bat species hosted ectoparasite communities dominated by the mite Spinturnix americanus and the flea Myodopsylla insignis with other ectoparasites being rarely encountered. Despite being the most common ectoparasites of both bat species, our results suggest that infections of these ectoparasites vary between them with M. insignis prevalence being greater on M. lucifugus and S. americanus prevalence being greater on M. septentrionalis. We suggest these differences in infection burden are related to the social and roosting behaviors of these hosts and the life history of the ectoparasites. Monitoring parasites concurrently with focal species is important for capturing this aspect of biodiversity and for understanding how host–parasite dynamics may be disrupted if hosts undergo drastic demographic changes. Ectoparasite community diversity is similar between two endangered bat species in Atlantic Canada. Ectoparasite burden of the two most common ectoparasites varies between bat species in conjunction with their behavior and roosting differences.
Bartonella and Rickettsia Infections in Haematophagous Spinturnix myoti Mites (Acari: Mesostigmata) and their Bat Host, Myotis myotis (Yangochiroptera: Vespertilionidae), from Poland
Hematophagous Spinturnix myoti mites and their host, the greater mouse-eared bat (Myotis myotis), were tested for the presence of Bartonella spp., Rickettsia spp., and Anaplasma phagocytophilum. In total, Bartonella spp. DNA was amplified in 28 % of 134 mite pools and in 25% of 59 bats tested by PCR targeting a fragment of citrate synthase gltA gen. Adult mites were at least threefold more frequently infected compared to immature stages. The overall infection prevalence among mite pools from cavedwelling bats was higher than for those collected from attic shelters. Three distinct genotypes were detected. The most prevalent genotype in mites and bats matched closely with Candidatus Bartonella hemsundetiensis identified in bats from Finland and was relatively distant from bat-borne Bartonella strains described in the UK and France. Importantly, most sequences were close to those reported in forest workers from Poland. The presence of identical genotype among S. myoti samples and M. myotis bats suggests that bartonellae can be shared between mites and their bat hosts. In this case, wing mites could serve as vectors, whereas their hosts as reservoirs. One blood sample was positive by PCR for the msp2 gene of A. phagocytophilum. Two mite pools yielded Rickettsia spp. DNA. Both sequences were distinct from any known species but can be classified as spotted fever group Rickettsia spp. Our findings expanded our knowledge on the role of spinturnicid mites in the ecology and epidemiology of bacterial infections associated with vespertilionid bats, especially regarding the genus Bartonella.
Morphological Variation in the Wing Mite Periglischrus paracaligus (Acari: Spinturnicidae) Associated With Different Moving Strategies of the Host Leptonycteris yerbabuenae (Chiroptera: Phyllostomidae)
We evaluated the morphometric variation of wing mite Periglischrus paracaligus Herrin and Tipton, along with the distribution of their host Leptonycteris yerbabuenae Martinez and Villa, in Mexico. A total of 115 female and 96 male specimens of P. paracaligus were used to conduct linear and geometric morphometric analyses. We assessed the influence of the geographic distribution of the migratory and nonmigratory populations of its bat host species on changes in size and shape on these parasites. Both analyses revealed high intraspecific variation in P. paracaligus, but subtle geographic differentiation. None of the approaches used identified a consistent pattern that separates unambiguously migratory from nonmigratory populations. Females presented more phenotypic variation than males and UPGMA analyses showed southern and northern colonies grouped in two distinct clades. Males on the other hand showed randomly grouped colonies with no geographic concordance. Interestingly, the most differentiated colony was the north Pacific colony of Jalisco. For both, males and females, isolation by distance (IBD) was not observed. We discuss these results as a possible scenario of contact between migratory populations located in northern Mexico with nonmigratory populations in other localities in central and southern Mexico conforming to a panmictic population along with their distribution range.
Molecular evidence of Wolbachia in bat-associated mite Periglischrus Iheringi Oudemans, 1902 (Mesostigmata: Spinturnicidae) from Brazil
Wolbachia is an intracellular endosymbiont bacterium found in nematodes and arthopods. Regarding mites, the Wolbachia supergroup U has been described based on strains found in the genus Spinturnix . In this study, ten specimens of Periglischrus iheringi (Mesostigmata: Spinturnicidae), collected from Artibeus obscurus (Chiroptera: Phyllostomidae) in Santa Catarina State, were found to be infected with Wolbachia . Phylogenetic analysis based on the 16 S rRNA gene revealed that the detected Wolbachia strain belongs to Supergroup F, which has also been detected in other ectoparasitic arthropods, such as Columbicola columbae (slender pigeon lice) and Cimex lectularius (bed bug). This study presents the first molecular detection of Wolbachia in P. iheringi .
Parasitic prevalence in bat fauna captured from selected sites in northwestern Pakistan
Abstract Present study was conducted to record ecotoparasitic prevalence in bat fauna of the northwestern parts of Pakistan. A total of 204 bat specimens representing 14 species were captured during a two year survey, extending from June 2015 through May 2016. A species of soft ticks Argas vespertilionis was identified from 23 bat specimens. Similarly, members of the family Dermanyssoidae (dermanyssoid mites) were isolated from 10 bat specimens, that of Spinturnicidae (spinturnicid mites) from 3 and Streblidae (bat flies) from 2 bat specimens. These parasites were collected using entomological tweezers and were identified on morphological basis. Further studies on parasitic prevalence, molecular characterization of bat parasites and their control measures are recommended. Resumo O presente estudo foi realizado para registrar a prevalência de ectoparasitas na fauna de morcegos em partes do noroeste do Paquistão. Um total de 204 espécimes de morcegos, representando 14 espécies, foi capturado durante uma pesquisa de dois anos, de junho de 2015 a maio de 2016. A espécie de carrapato Argas vespertilionis foi identificada em 23 espécimes de morcegos. Da mesma forma, os membros da família Dermanyssidae (ácaros dermanyssoid) foram isolados de 10 espécimes de morcego, os da Spinturnicidae (ácaros spinturnicid), de 3, e os da Streblidae (mosca de morcego), de 2 espécimes de morcego. Esses parasitas foram coletados com pinça entomológica e identificados com base morfológica. Estudos adicionais sobre prevalência parasitária, caracterização molecular de parasitas de morcego e suas medidas de controle devem ser realizados.
Parasites in peril: abundance of batflies (Diptera: Nycteribiidae) declines along an urbanisation gradient
Urbanisation has a wide range of impacts on biodiversity, but its effects on parasitic arthropods, particularly those of bats, remain poorly studied. Ectoparasites of the large-footed myotis (Myotis macropus) in eastern Australia were sampled from 10 roost sites across an urban gradient. In total, 265 bats were examined and 447 ectoparasites were collected, comprising three species of Hippoboscoidea: Basilia hamsmithi (Nycteribiidae), Penicillidia setosala (Nycteribiidae), Brachytarsina amboinensis (Streblidae), and an acarine, Spinturnix novaehollandiae (Mesostigmata, Spinturnicidae). Degree of urbanisation was found to have a significant effect on the abundance of the batfly B. hamsmithi but had no significant effect on the abundance of the wing mite S. novaehollandiae. We hypothesise that this is due to differences in the life history of these two species and the advantage components of these differences confer in exploiting variations in host roost habits. The prevalence of the batfly B. hamsmithi was high in urban sites but comparatively low in suburban and non-urban sites. Mass, sex, and body condition were found to have no significant impact on either the parasite load or the chance of infestation. Both P. setosala and B. amboinensis were recorded from M. macropus for the first time, though only in small numbers. They were associated with mixed-species roosts in a suburban site and are evidence of parasite spillover between sympatric bat species.